MS-LC430-2H2 Series (EU)

  • Integrated C&I Solution: All-in-one PV, BESS, and EV charging system
  • Extreme Safety: 5-Level protection including fire suppression and explosion-proofing
  • High Performance: 420kW DC fast charging & 10ms grid switching
  • Intelligent Cloud Control: Smart algorithms, 24/7 monitoring, and safety alerts
  • Scalable & Versatile: Modular design supports expansion and diverse applications (on/off-grid, VPP)
SKU: MS-LC430-2H2Categories: High Voltage Series (HV)
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Description

The Deye Winter MS Series presents a comprehensive, all-in-one energy solution designed for Commercial & Industrial (C&I) applications. This system seamlessly integrates Photovoltaic (PV) power generation, Battery Energy Storage Systems (BESS), and Electric Vehicle (EV) charging capabilities into a single, efficient, and safe unit.

Key Features

Intelligent Cloud Platform

  • Customizable Load Algorithms: Optimize energy usage based on specific needs.
  • 24/7 Online O&M: Continuous remote monitoring and management for peak performance.
  • Proactive Warnings: Battery life and safety alerts ensure system longevity and reliability.
  • Cloud Interconnection: Seamless integration with other devices and platforms.

Ultimate Safety

  • Self-Contained Fire Protection: Integrated aerosol and water fire suppression systems.
  • Explosion-Proof Design: Engineered for maximum safety in demanding environments.
  • Five-Level Electrical Safety: Comprehensive protection against electrical hazards.
  • High-Voltage Interlocking: Prevents arc operation when loaded, enhancing operational safety.
  • Extreme Safety Protection (5 Levels): Incorporates detection, early warning, smoke exhaust, fire fighting, and explosion venting.

Versatile Expansion & Design

  • All-in-One Modularity: Combines PCS, BMS, and EMS in a single, streamlined design.
  • Scalability: Supports parallel connection of up to 8 cabinets for increased capacity.
  • Flexible Storage: Compatible with 2-hour and 4-hour energy storage applications.
  • High Energy Density: Optimized design reduces the required installation footprint.

Multiple Application Scenarios

  • EV Charging Expansion: Augment existing or new EV charging infrastructure.
  • Energy Arbitrage: Utilize peak-to-valley shifting for cost savings.
  • Virtual Power Plant (VPP): Ready for integration into VPP networks.
  • Off-Grid Capability: Suitable for islands, communication base stations, and other remote locations.

Performance & Reliability

  • Seamless Grid Transition: 10ms switch time between on-grid and off-grid modes.
  • Fast Charging: 420kW DC fast charging capability with DC coupling for ESS and charging.
  • Extended Warranty: 10-year warranty, including 10-year free replacement of coolant.

Technical Specifications (MS-LC430-2H2)

System Parameters:
  • Operating Temperature: -25°C to +55°C
  • Storage Temperature: -30°C to +60°C
  • Humidity: 0 – 95% (No Condensation)
  • Cooling: Liquid Cooling
  • Ingress Protection: IP54
  • Anticorrosion Grade: ≥C4
  • Max Altitude: ≤2000m
  • Communication: RS485, Modbus TCP, DIDO
  • Weight: ≤4600kg
  • Dimensions (W×D×H): 2000 × 1300 × 2480 mm
DC Data:
  • Battery Type: LiFePO₄
  • Nominal Capacity: 280Ah
  • Nominal Energy: 430.08kWh
  • Nominal DC Voltage: 768Vd.c.
  • DC Voltage Range: 636Vd.c. ~ 876Vd.c.
  • Charge/Discharge Rate: Charge 0.5P, Discharge 1P
AC Data:
  • Nominal AC Voltage: 380/400V 3L+N+PE
  • Rated Frequency: 50 / 60Hz
  • Rated Power: 200kW
  • Maximum Power: 220kW (1.1 times rated power)
  • Power Factor: -0.8 ~ +0.8
The Deye Winter MS Series (MS-LC430-2H2) offers a robust, safe, and scalable integrated energy solution for C&I users. Combining intelligent management, advanced safety features, versatile applications, and high performance, it optimizes energy usage, supports EV infrastructure, and ensures reliable power management.

Download

Deye MS-LC430-2H2 C&I PV-BESS-EV Charging Integrated Solution Datasheet

Deye MS-LC430-2H2 C&I PV-BESS-EV Charging Integrated Solution Datasheet German

Certificate

Statement

DEYE Statement on Battery Expansion and Insulation Fault

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